EP1764200B1 - Appareil pour couper un boudin extrudé en matériau déformable plastiquement, en particulier en argile - Google Patents

Appareil pour couper un boudin extrudé en matériau déformable plastiquement, en particulier en argile Download PDF

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Publication number
EP1764200B1
EP1764200B1 EP20060019394 EP06019394A EP1764200B1 EP 1764200 B1 EP1764200 B1 EP 1764200B1 EP 20060019394 EP20060019394 EP 20060019394 EP 06019394 A EP06019394 A EP 06019394A EP 1764200 B1 EP1764200 B1 EP 1764200B1
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EP
European Patent Office
Prior art keywords
transverse
holder
actuator
longitudinal
passage
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP20060019394
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German (de)
English (en)
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EP1764200A2 (fr
EP1764200A3 (fr
Inventor
Rainer Koch
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hans Lingl Anlagenbau und Verfahrenstechnik GmbH and Co KG
Original Assignee
Hans Lingl Anlagenbau und Verfahrenstechnik GmbH and Co KG
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Publication date
Application filed by Hans Lingl Anlagenbau und Verfahrenstechnik GmbH and Co KG filed Critical Hans Lingl Anlagenbau und Verfahrenstechnik GmbH and Co KG
Publication of EP1764200A2 publication Critical patent/EP1764200A2/fr
Publication of EP1764200A3 publication Critical patent/EP1764200A3/fr
Application granted granted Critical
Publication of EP1764200B1 publication Critical patent/EP1764200B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B11/00Apparatus or processes for treating or working the shaped or preshaped articles
    • B28B11/14Apparatus or processes for treating or working the shaped or preshaped articles for dividing shaped articles by cutting
    • B28B11/16Apparatus or processes for treating or working the shaped or preshaped articles for dividing shaped articles by cutting for extrusion or for materials supplied in long webs
    • B28B11/163Apparatus or processes for treating or working the shaped or preshaped articles for dividing shaped articles by cutting for extrusion or for materials supplied in long webs in which the cutting device is moved longitudinally with the moving strand
    • B28B11/165Apparatus or processes for treating or working the shaped or preshaped articles for dividing shaped articles by cutting for extrusion or for materials supplied in long webs in which the cutting device is moved longitudinally with the moving strand mounted on a carrier

Definitions

  • the invention relates to a device for cutting a strand according to the preamble of claim 1.
  • a device for cutting a strand according to the preamble of claim 1.
  • Such a device is used in particular in the production of moldings made of clay or the like for the construction industry, in particular bricks.
  • a brick cutting machine which has a hydraulic transverse drive.
  • a massive pivot arm pushes against a steel beam which in turn drives forward V-shaped vertically spaced slide arms whose corresponding end faces are vertically connected via cutting wires. With each thrust of the system, the cutting wires are pushed through the clay string, thereby splitting it.
  • a strand cutting device is disclosed, with a cutting block the means of mounted cutting bracket.
  • the drive of the cutting device via a clutch, a gearbox and a disc with an eccentrically mounted bolt automatically.
  • the invention is based on the object to improve a device of the type described above with respect to the transverse guide or the transverse drive for the holder. This object is solved by the features of claim 1. Advantageous developments of the invention are described in the appended subclaims.
  • the transverse drive on two drive elements which engage in a direction along the conveying direction distance from each other on the holder.
  • an uneven distribution of the cutting forces on the holder and its transverse guidance is avoided and achieved a uniform distribution of the cutting forces.
  • Another advantage is that the guide surfaces are less stressed and therefore a long life is achieved. Due to the improved guide or drive situation, it is also possible with a sufficient guidance, the guide length of the guide body relatively short, so that the design size can be reduced in the guide direction of the transverse guide.
  • the embodiment of the invention is particularly well suited for such devices in which two or more, one along the conveying direction directed distance from each other having cutting wires are held on the holder, which make it possible to perform multiple cuts simultaneously in a transverse movement of the holder.
  • Another advantage of the embodiment of the invention is therefore that an efficient device is achieved, which is also characterized by a simple design.
  • the embodiment according to the invention with a plurality of cutting wires arranged one behind the other in the longitudinal direction of the passage is also particularly well suited in combination with a device designed for bidirectional cutting, in which a spreading of the cut strand sections is not required.
  • a device of this combination is characterized by high performance with low design, construction and control effort, with a stabilized support of the holder or the transversely opposed holder is achieved in the cutting motion.
  • hinge rods and pendulum lever which ensure small and simple constructions in the transverse direction.
  • a lever drive also allows a simple way to change the stroke length of the drive elements. It is possible to increase the stroke length only in one direction or reduce and thus adapt to a desired transverse dimension of the strand, with an end point of the stroke length always remains the same, as it is set constant by the support of the clay string on the conveyor.
  • the holder transversely to the conveying direction is formed as a continuous and thus closed frame.
  • a holder in the longitudinal and transverse guide which is preferably driven vertically by a respective arranged on the associated side drive.
  • the drawing shows the device according to the invention for cutting a strand of plastically deformable material, in particular clay, in longitudinal sections, preferably brick, in side view.
  • the main components of the device shown in simplified form are a holder 1 for at least one cutting wire 1 a simplified illustrated as an intersection, which is attached end in a manner not shown.
  • the holder 1 and the cutting wire 1a are offset transversely with respect to a strand 3 clarified only by a longitudinal center axis 2 or a passage 3a for the strand 3 arranged that the holder 1 and the cutting wire 1a are in the starting position shown in the drawing with respect to the passage 3a in a passage 3a releasing transversely offset position.
  • the holder 1 and the cutting wire 1a can be arranged laterally offset below the passage 3a (see drawing) or above the passage 3a or with respect to the passage 3a.
  • the cutting movement of the holder 1 and the transverse drive movement and an associated transverse guide can therefore be directed substantially vertically or horizontally.
  • a plurality of cutting wires 1a extending transversely to the longitudinal central axis 2 can be arranged on the holder 1, which have a distance a extending from one another along the longitudinal central axis 2.
  • Two or more cutting wires 1a preferably three or four or more cutting wires 1a, may be fastened to the holder 1, as the drawing shows by way of example.
  • the length L of the holder 1 extending substantially parallel to the longitudinal center axis 2 is thus equal to or slightly greater than the product of the distance a or distances a extending approximately parallel to the longitudinal central axis 2 and the number reduced by 1 the cutting wires 1a.
  • the length L of the holder 1 is greater than its transverse dimension, so that it is preferably an elongated holder 1.
  • the holder 1 and the cutting wire 1a release the passage 3a for the strand 3 extending in the longitudinal direction of the longitudinal center axis 2, the passage 3a being downwardly directed by a straight extending support, not shown, z. B.
  • a conveyor or table is limited, on which the strand 3 is movable through the passage 3a in the conveying direction 4 shown by an arrow.
  • the cutting wire 1a with the holder 1 is moved by a transverse drive 5 transverse to the holder 1 with a drive motor 6 and at least one gear 7 connected therebetween to the opposite side of the passage 3a.
  • the holder 1 in a longitudinal guide 8 also represented by double arrows and a transverse guide 9 by a longitudinal drive 30 and the transverse drive 5 is movable so that it at a longitudinal movement at the speed of the conveyor or strand 3 transversely with an optional cutting speed on the opposite Side is moved, wherein the strand 3 is cut transversely in this Hin-transverse movement, and wherein one or more strand sections in the number of existing cutting wires 1a are cut transversely.
  • the holder 1 may be drivable so that it is moved back to the output side with a dead stroke, wherein the cutting wire 1 a is moved back in between the cut strand sections or the remaining strand 3 in sections cut by spreading the strand sections.
  • the holder 1 with respect to the return movement but also controlled and moved so that the at least one cutting wire 1a in its rear-transverse movement also performs a cut, previously the holder 1 in the longitudinal guide 8 and through the longitudinal drive 30 as far along the strand 3 has been moved back, that this movement length corresponds to the length of the desired strand sections or. Also in the back-transverse movement without or with a cutting operation of the cutting wire 1a is moved with the holder 1 at the speed of the strand 3.
  • the cutting in the outward-transverse movement and the back-transverse movement is referred to in the jargon with the term "bidirectional cutting".
  • the above-described movements are known per se and therefore require no further description.
  • the transmission 7 has for transverse movement of the holder 1 two transversely to the longitudinal center axis 2 back and forth movable, preferably rod-shaped drive elements 11 which engage two connection points 10a, 10b on the holder 1, which have a longitudinal direction of the conveying direction 4 distance b from each other , and in particular in the end regions of the holder 1 are arranged.
  • the preferably equal distances of the connection points 10a, 10b from the rear or front end of the holder 1 are denoted by c.
  • the joints 10a, 10b are thus arranged eccentrically on the holder 1, wherein they preferably have equal distances d of a mean resulting and clarified by an arrow cutting force S resulting in the sum of the cutting forces of the existing cutting wires 1a.
  • the drive elements 11 are forcibly moved in both transverse directions, that is, in a Hinhub they act with a thrust and in a return stroke with a tensile force on the holder. 1
  • the drive elements 11 are formed by two hinge rods 11a, 11b, which are pivotable in each case by a joint 12a, 12b, 12c, 12d about a transversely extending hinge axis pivotally at one end to the holder 1 and at the other end with two pivot levers 13a, 13b are connected, which form a knee lever with the hinge rods 11a, 11b and include in the initial position of the holder 1 a sharp knee angle W1 and include in the moved to the other side of the strand 3 position of the cutting wire 1a an obtuse knee angle W2.
  • Both toggle levers are pivoted by a common, driven by the drive motor 6 crank drive 16 with a link rod 17 back and forth, which is connected by a pivot 18 rotatably connected to the crank drive 16 and by a pivot joint 19 pivotally connected to one of the two toggle lever or attachments thereof the two toggle lever assemblies in turn are pivotally connected together by a pivot rod 21, which is pivotally connected in the present embodiment by pivoting pivots 22a, 22b disposed at their ends with two pendulum levers 23a, 23b, which at their base ends each rigid with the pivot levers 13a, 13b and / or a respective associated pivot shaft of the pivot bearing 14a, 14b and thus are pivotally mounted in the pivot bearings 14a, 14b.
  • the pivot joints 12c, 12d and 22a, 22b are each on the pivot axes of the pivot bearing 14a, 14b intersecting radial lines, which include each with the radial lines of the pivot lever 13a, 13b a preferably equal acute angle W3, W4.
  • the effective lever lengths of the pivot levers 13a, 13b and the pendulum levers 23a, 23b and their angular positions in space are the same and, on the other hand, the lengths of the hinge rods 11a, 11b and the levers 13a, 13b, 32a, 32b are the same, the drive movement generated by the drive 6 is converted into two equal movement lengths for the drive elements 11.
  • the holder 1 is preferably moved uniformly in the sense of a parallel displacement, wherein tilting movements are substantially avoided.
  • the adjustability is achieved in that the distance of the pivot joint 19 from the pivot axis of the associated pivot bearing 14a is selectively reduced or increased. This can be done in the associated Pivot lever 13a or z.
  • a longitudinally extending in him groove 24 may be arranged in which the pivot joint 19 in the length range of the groove 24 is adjustable and lockable.
  • For adjusting and locking can serve a screw of the associated hinge pin, which is selectively movable in the groove 24 and lockable by the screw while ensuring the pivoting movement of the pivot joint 19.
  • the pendulum lever 23a shown on the right is curved parallel to its pivoting plane to the other pendulum lever 23b, the groove 24 also being curved correspondingly in the form of a circular arc in relation to the pivot 18.
  • the radius of curvature corresponds to the center distance of the joints 18, 19 of the articulated rod 17. This curvature of the groove 24 makes it possible to move and adjust the joint 19 in the groove 24 for adjusting the movement length of the holder 1, without the remaining gear parts having to be adjusted. to allow the Einstellschwenkamba the link rod 17.
  • the pendulum levers 23a, 23b are arranged so that they extend transversely to the passage 3a in the initial position of the holder 1, with their free ends facing away from the passage 3a, and wherein the connecting rod 17th protrudes from the pendulum lever 23a approximately along the passage 3a, in particular to the rear, as shown in the drawing.
  • the articulated rod 21 extends substantially parallel to the passage 23a, in particular from the pendulum lever 23a forward to the pendulum lever 23b.
  • the toggle lever forming the drive element 11b is arranged with the pendulum lever 23b with respect to the toggle lever forming the drive element 11a with the pendulum lever 23a preferably offset in the conveying direction 4 forward substantially at the distance b.
  • both toggle levers each form a crank mechanism 13c, 13d, which is arranged downstream of the crank mechanism 17 with respect to the direction of the drive force.
  • the adjustment device E is arranged so that an adjustable by adjusting E enlargement or reduction of the movement length of the holder 1 acts simultaneously on the crank mechanisms 13c and 13d or on the drive element 11a and 11b.
  • the joint rod 21 a preferably approximately equal motion transmission to the front link rod 11b and on the other hand, a simultaneous adjustment of the transverse movement length of the front link rod 11b guaranteed.
  • the drive motor 6 and the pivot joints 14a, 14b are preferably mounted on a support base 15, which is an attachment of the device z.
  • a support base 15 As the conveyor or table, not shown, or to act on a component that is independent of other components on the existing floor, z. B. with arranged in its end areas feet 25th
  • pivot joints 12a, 12b and thus also the holder 1 in a vertical or horizontal plane of movement or in planes of movement which are laterally offset with respect to the strand 3 or its conveyor. In this or parallel to this plane of movement extend the pivot planes of the above-described other components of the transmission. 7
  • a cross-sectionally U-shaped holder 1 may be provided, the legs of which surround the passage 3a and are connected in their free end portions with the ends of the cutting wires 1a, and which is driven by a transverse drive, in a parallel to, preferably horizontal , Transverse movement extending longitudinal plane is effective.
  • the front or the rear pivot bearing pair 14a or 14b may be interconnected by a transverse pivot shaft, so that the associated pivot lever pair 13a or 13b respectively with the associated pivot shaft and the associated pendulum lever 23a or 23b form a rigidly connected pivot unit.
  • transversely opposed holders 1 In the embodiment with two with respect to the passage 3a transversely opposed holders 1 according to the embodiment shown in the drawing and described are the cutting wires or 1a in the illustrated starting position outside the passage 3a, in particular below the passage 3a, and they are through both sides not shown longitudinal drives or a common, in particular centrally arranged, longitudinal drive 30 and the illustrated transverse drives 5 in the manner already described on the opposite side of the passage 3a and back again movable.
  • more than two drive elements 11 or transversely opposed drive element pairs 11 in the longitudinal direction of the passage 3a at intervals b from each other can be arranged one behind the other.
  • the one or more further drive elements 11 or drive element pairs 11 are preferably formed by above-described toggle lever connected by link rods 21 pendulum lever 23b.
  • link rods 21 pendulum lever 23b In the figure, bottom left, another articulated rod 21 extending forward to another pendulum lever 23b, not shown, is shown in a hinted manner.
  • the rearmost and foremost drive element 11 or drive element pairs 11 are preferably arranged symmetrically with respect to the resulting cutting force S of the cutting wires 1a.
  • the transverse guide 9 extending vertically in the above-described embodiments in the drawing has four guide rods 9a arranged in the corners of a rectangular quadrangle, two of which have a longitudinal and transverse distance from each other, and the lower ends of two lateral ones Guide rods 9a are attached to a transverse guide beam 31.
  • two guide rods 9a for the associated lateral holder 1 thus extend on both sides of the passage 3a upwards, wherein their upper ends are connected by a longitudinal strut 32 and stabilized.
  • a transverse guide carrier 31 can thus be arranged on both sides of the passage 3a, each carrying two longitudinally spaced guide rods 9a, on which a lateral holder 1 is guided in a vertically displaceable manner.
  • the laterally opposite guide rods 9a may be connected to each other at their upper ends by a transverse strut, which is not shown in the drawing.
  • the longitudinal guide 8 has two arranged on both sides and below the passage 3a longitudinal guide rods 8a, which are mounted end in bearing pieces 33 which are fixedly supported, for. B. on the support base 15.
  • the support body 31a is mounted longitudinally displaceable on both sides by two longitudinally spaced from one another and preferably attached to the underside longitudinal guide bushings 8b on the longitudinal guide rods 8a.
  • the longitudinal drive 30 for the forward and backward movement of the transverse guide carrier 31 has a preferably arranged below the transverse guide support 31 and between the longitudinal guide rods 8a, indicated motor 34, the z. B. may be formed by an effective in both longitudinal directions hydraulic cylinder, which is supported directly or indirectly fixed, for. B. on the support base 15, and on the transverse guide carrier 31 attacks.
  • the holder 1 as a holding body may each have a vertically arranged side cheek, which carries the transverse guide bushes 9b at their longitudinal ends and is connected to the ends of the cutting wires 1a, or the side cheeks may each have two superimposed side cheek strips 1b, 1c, wherein the cutting wires 1a are arranged and fixed with their ends on the laterally opposite upper side cheek strips 1c and the connection points 10a, 10b are arranged for the drive elements 11a, 11b on the lower side cheek strips 1b.
  • the suggestively illustrated strand 3 is moved in the conveying direction 4 through the passage 3a, where it can rest on the conveyor or table or rest on a table and can be moved.
  • the transverse guide carrier 31 For a cutting operation of the transverse guide carrier 31 is advanced by the longitudinal drive 30 with the conveying speed of the strand 3. At the same time arranged on both sides of the passage 3a holder 1 by the transverse drive from a starting position in which the cutting wires 1a next to, here z. B. above or below, the strand 3 are moved to the opposite side of the passage 3a or strand 3, wherein in the number of cutting wires 1a existing strand sections are cut.
  • the holder 1 After a return movement and forward movement of the transverse guide support 31 with the conveying speed of the strand 3 can be driven by the transverse drive 5 so that they are moved back to the output side with a Leerhub, the cutting wires 1a in by spreading the strand sections brought about kerf between the cut strand sections and the remaining strand 3 are moved back.
  • the cutting described so far is referred to in the jargon as "continuous and one-sided cutting".
  • the holders 1 can also be controlled and moved with respect to the return movement such that the cutting wires 1a likewise each perform a cut in their return transverse movement.
  • the holder 1 and the guide support 31 are previously moved back in the longitudinal guide 8 by the longitudinal drive 30 so far that this movement length is sufficient to advance the holder 1 with the conveying speed of the strand and at the same time in the sense of back-transverse movement to move transversely, wherein the strand 3 is also cut.
  • Such cutting in the back-to-back movement and in the back-to-back movement is referred to in technical jargon by the term "bidirectional cutting".

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Tyre Moulding (AREA)
  • Devices For Post-Treatments, Processing, Supply, Discharge, And Other Processes (AREA)
  • Processing Of Stones Or Stones Resemblance Materials (AREA)

Claims (19)

  1. Dispositif pour couper un boudin (3) en matériau déformable plastiquement, en particulier en argile ou un matériau analogue, qui est déplaçable dans un passage (3a) s'étendant dans la direction longitudinale du boudin (3) sur un support, avec au moins un fil de coupe (1a) s'étendant transversalement au passage (3a) qui est retenue à une extrémité dans un organe de retenue (1) qui est déplaçable par un entraînement longitudinal (30) et un entraînement transversal (5) de façon que le fil de coupe (1a), lors d'un mouvement longitudinal correspondant à la vitesse de convoyage, est déplacé depuis un côté du passage (3a) vers l'autre côté et à nouveau en retour, où l'entraînement transversal (5) présente un premier élément d'entraînement qui s'applique à l'organe de retenue (1), où l'entraînement transversal (5) présente au moins un deuxième élément d'entraînement (11) qui s'applique à un écart (b) orienté le long de la direction de convoyage (4) orientée dans la direction du passage (3a), du premier élément d'entraînement (11) à l'organe de retenue (1), et où les éléments d'entraînement (11) sont respectivement une partie d'un levier coudé associé, avec une barre articulée (11a, 11b) formant l'élément d'entraînement associé et un levier de pivotement (13a, 13b) qui est relié à l'une de ses extrémités par une articulation pivotante (12c respectivement 12d) à l'extrémité éloignée de l'organe de retenue (1) de la barre articulée associée (11a respectivement 11b) et qui est logé d'une manière pivotante à son autre extrémité dans un palier pivotant (14a respectivement 14b),
    caractérisé en ce que les leviers coudés sont reliés entre eux d'une manière pivotante par une barre articulée (21) .
  2. Dispositif selon la revendication 1, caractérisé en ce que les éléments d'entraînement (11) sont en liaison d'entraînement au moyen d'un moteur d'entraînement commun (6) .
  3. Dispositif selon la revendication 1 ou 2, caractérisé en ce qu'est prévu pour les éléments d'entraînement (11) un dispositif de réglage (E) pour modifier la longueur de déplacement de l'organe de retenue (1), le dispositif de réglage (E) agissant simultanément sur les deux éléments d'entraînement (11).
  4. Dispositif selon l'une des revendications précédentes, caractérisé en ce que les éléments d'entraînement (11) sont des composants identiques.
  5. Dispositif selon l'une des revendications 2 à 4, caractérisé en ce qu'est disposé entre le moteur d'entraînement (6) et les leviers coudés un mécanisme de transmission à manivelle dont la barre d'articulation (2) est reliée d'une manière pivotante directement ou indirectement à un des leviers coudés.
  6. Dispositif selon la revendication 5, caractérisé en ce que la barre articulée (21) est reliée d'une manière pivotante à un levier pendulaire (23a) qui est relié directement ou indirectement d'une manière rigide au levier pivotant (13a) d'un des leviers coudés et qui forme de préférence avec ce levier pivotant (13a) un angle aigu (W3).
  7. Dispositif selon la revendication 6, caractérisé en ce qu'aussi le levier pivotant (13b) de l'autre levier coudé est relié rigidement à un levier pendulaire (23b) qui forme avec le levier pivotant (13b) de préférence un angle aigu (W4), et en ce que la barre articulée (21) est reliée d'une manière pivotante aux leviers pendulaires (23a, 23b).
  8. Dispositif selon l'une des revendications précédentes, caractérisé en ce que sont retenus à l'organe de retenue (1) plusieurs fils de coupe (1a), en particulier quatre fils de coupe ou plus (1a) qui présentent respectivement un écart entre eux (a) s'étendant le long du passage (3a).
  9. Dispositif selon l'une des revendications précédentes, caractérisé en ce que l'organe de retenue (1) est un composant s'étendant longitudinalement dans la direction longitudinale du passage (3a).
  10. Dispositif selon l'une des revendications précédentes, caractérisé en ce que les éléments d'entraînement (11), relativement au milieu longitudinal de l'organe de retenue (1), s'appliquent de manière excentrée à l'organe de retenue (1) ou des deux côtés d'une force de coupe résultante (S) à l'organe de retenue (1).
  11. Dispositif selon l'une des revendications précédentes, caractérisé en ce que l'entraînement longitudinal et l'entraînement transversal (5) sont prévus pour une coupe bidirectionnelle du boudin (3).
  12. Dispositif selon l'une des revendications précédentes, caractérisé en ce que deux organes de retenue (1) sont disposés relativement au passage (3a) d'une manière décalée transversalement l'un en face de l'autre et sont déplaçables par exemple par un entraînement longitudinal commun (30) et/ou un entraînement transversal (5) ou à chaque fois au moyen d'un entraînement longitudinal et/ou entraînement transversal (5) associé.
  13. Dispositif selon la revendication 12, caractérisé en ce que les leviers pivotants (13a) disposés d'une manière opposée transversalement d'une des deux paires de leviers coudés sont reliés solidement l'un à l'autre par un arbre de pivotement traversant transversalement.
  14. Dispositif selon la revendication 12 ou 13, caractérisé en ce que les organes de retenue (1) sont disposés relativement au passage (3a) d'une manière opposée horizontalement et sont déplaçables chacun dans un guidage longitudinal (8) s'étendant sensiblement horizontalement et un guidage transversal (9) s'étendant sensiblement verticalement.
  15. Dispositif selon la revendication 14, caractérisé en ce que le guidage transversal (9) est disposé à un support de guidage transversal (31) qui est déplaçable selon un mouvement alternatif dans le guidage longitudinal (8).
  16. Dispositif selon la revendication 15, caractérisé en ce que le support de guidage transversal (31) présente un corps de support plat respectivement étroit, en particulier en forme de plaque (31a), à partir duquel s'étendent au moins deux tiges de guidage transversales (9a) présentant un écart longitudinal entre elles, auxquelles est logé d'une manière déplaçable transversalement l'organe de retenue (1) ou l'organe de retenue associé (1).
  17. Dispositif selon la revendication 16, caractérisé en ce que le corps de support (31a) s'étend transversalement depuis un côté jusqu'à l'autre côté du passage (3a) et présente sur les deux côtés deux tiges de guidage transversales (9a).
  18. Dispositif selon la revendication 16 ou 17, caractérisé en ce que le corps de support (31a) du support de guidage transversal (31) est disposé plus bas que le passage (3a).
  19. Dispositif selon l'une des revendications précédentes 15 à 18, caractérisé en ce que l'entraînement longitudinal (30) est disposé entre le support de guidage transversal (31) et un bâti respectivement une base de support (15), de préférence au côté inférieur et au milieu au support de guidage transversal (31) et s'applique à celui-ci.
EP20060019394 2005-09-16 2006-09-15 Appareil pour couper un boudin extrudé en matériau déformable plastiquement, en particulier en argile Not-in-force EP1764200B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE200510044429 DE102005044429B4 (de) 2005-09-16 2005-09-16 Vorrichtung zum Schneiden eines Stranges aus plastisch verformbarem Material, insbesondere Ton, mit einem durch wenigstens zwei Antriebselemente bewegbaren Halter für mehrere Schneidedrähte

Publications (3)

Publication Number Publication Date
EP1764200A2 EP1764200A2 (fr) 2007-03-21
EP1764200A3 EP1764200A3 (fr) 2011-01-19
EP1764200B1 true EP1764200B1 (fr) 2012-09-05

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EP20060019394 Not-in-force EP1764200B1 (fr) 2005-09-16 2006-09-15 Appareil pour couper un boudin extrudé en matériau déformable plastiquement, en particulier en argile

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EP (1) EP1764200B1 (fr)
CN (1) CN1958260B (fr)
DE (1) DE102005044429B4 (fr)

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ITMO20070119A1 (it) * 2007-04-03 2008-10-04 Costruzioni Meccaniche Isola S R L Apparato di taglio
CN102806597A (zh) * 2011-05-29 2012-12-05 王进录 蒸压加气混凝土砌块锯式双向切割
CN103144408B (zh) * 2013-03-26 2015-02-18 杰斯(扬州)智能环保科技有限公司 一种连续布料板坯的湿法切割机及其工作方法
WO2015089706A1 (fr) 2013-12-16 2015-06-25 华为技术有限公司 Procédé et système de planification de séquence de réacheminement
JP6644465B2 (ja) * 2014-12-12 2020-02-12 株式会社ユーシン精機 裁断装置

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EP1764200A2 (fr) 2007-03-21
CN1958260B (zh) 2010-12-08
DE102005044429B4 (de) 2008-07-31
EP1764200A3 (fr) 2011-01-19
DE102005044429A1 (de) 2007-04-05

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